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A Series of Zr-Based Bulk Metallic Glasses with Room Temperature Plasticity

机译:一系列具有室温可塑性的Zr基大块金属玻璃

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摘要

A group of plastic Zr-Al-Ni-Cu bulk metallic glasses (BMGs) with low Zr content was developed and their thermal and mechanical properties were investigated. The results show that these Zr-based BMGs have a single crystallization event for all heating rates in the studied temperature region. The glass transition temperature Tg decreases with increasing Zr content for all heating rates. There are two melting procedures for the BMGs whose Zr content is less than 52 at %, while three melting procedures for the other Zr-based BMGs. The second melting procedure is split into two melting procedures for Zr52.5Al12.2Ni12.6Cu22.7 and Zr53Al11.6Ni11.7Cu23.7 BMGs, while the first melting procedure is split into two melting procedures for the other BMGs. The activation energy decreases with increasing sensitivity index β for the studied Zr-based BMGs. The plastic strain εp is in the region of 0.2%–19.1% for these Zr-based BMGs. Both yield strength σy and fracture strength σf are smallest for Zr55Al8.9Ni7.3Cu28.8 BMG whose εp is largest among all studied Zr-based BMGs and reaches up to 19.1%. In addition, the mechanism for the large difference of the plasticity among the studied Zr-based BMGs is also discussed.
机译:开发了一组低Zr含量的塑料Zr-Al-Ni-Cu块状金属玻璃(BMG),并研究了它们的热和机械性能。结果表明,这些基于Zr的BMG在所研究的温度区域内所有加热速率均具有单晶化事件。在所有加热速率下,玻璃化转变温度Tg随着Zr含量的增加而降低。 Zr含量小于52 at%的BMG有两种熔化程序,而其他基于Zr的BMG有3种熔化程序。对于Zr52.5Al12.2Ni12.6Cu22.7和Zr53Al11.6Ni11.7Cu23.7 BMG,第二个熔化过程分为两个熔化过程,而其他BMG将第一个熔化过程分为两个熔化过程。对于所研究的基于Zr的BMG,活化能随着灵敏度指数β的增加而降低。这些Zr基BMG的塑性应变εp在0.2%至19.1%的范围内。 Zr55Al8.9Ni7.3Cu28.8 BMG的屈服强度σy和断裂强度σf均最小,其ε p 在所有研究的Zr基BMG中最大,达到19.1%。此外,还讨论了所研究的Zr基BMG之间可塑性差异较大的机理。

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